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Simtryx

Simtryx provides a mixed reality healthcare training platform featuring AI-driven patients and physics-based hand tracking. Clinicians and students can practice procedures in realistic, interactive simulations without any risk to real patients.Entry the platform enables spatially aware, controller-free training where patient responses adapt dynamically to every clinical decision, while universities and clinical institutions can customize scenarios to align with their specific curricula.

Los Angeles, United States · HQ
Founded 20244300+ followers
Updated yesterday

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Traditional healthcare simulation relies on physical mannequins, standardized patients, or screen-based programs that lack realistic interactivity, spatial awareness, and adaptive responses. These methods are either expensive to scale, fail to replicate the nuances of real patient encounters, or create a disconnect between the learner and the procedure, leaving trainees underprepared for high-stakes clinical situations.

Solution

Simtryx delivers a mixed reality training platform that combines AI-powered virtual patients with precise, physics-based hand tracking, allowing clinicians to practice procedures with maximum fidelity and zero risk. Learners interact naturally using their own hands without controllers, remaining fully immersed and spatially aware while performing clinical tasks. Each AI-driven patient responds in real time to dialogue, touch, and clinical decisions, meaning every session adapts dynamically and no two cases play out the same way. The platform is built on a proprietary physics system engineered specifically for medical simulation, ensuring that every movement and procedure responds with the precision clinical training demands. Institutions can customize scenarios to align with their unique curriculum, competencies, and learning objectives.

Target Audience

The platform targets universities and clinical institutions worldwide that need scalable, high-fidelity simulation training for healthcare students and practicing clinicians.

Features

  • Mixed reality environment that preserves spatial awareness and natural interaction without controllers or disorientation
  • Proprietary physics-based hand tracking system that enables precise, realistic touch and procedure responses
  • AI-powered virtual patients that respond dynamically to dialogue, touch, and clinical decisions in real time
  • Scenario customization tools that allow institutions to align every case with their curriculum and competency requirements
  • Adaptive simulation sessions that ensure no two cases play out identically, providing varied training experiences
This profile is AI-generated and may contain inaccuracies.